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POPULATION DYNAMICS DETERMINE GENETIC ADAPTATION TO TEMPERATURE IN DAPHNIA

机译:人口动态决定遗传对温度的适应性

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Rising temperatures associatedwith globalwarming present a challenge to the fate ofmany aquatic organisms. Although rapid evolutionary response to temperature-mediated selection may allow local persistence of populations under globalwarming, and therefore is a key aspect of evolutionary biology, solid proof of its occurrence is rare. In this study, we tested for genetic adaptation to an increase in temperature in the water flea Daphnia magna, a keystone species in freshwater systems, by performing a thermal selection experiment under laboratory conditions followed by the quantification of microevolutionary responses to temperature for both life-history traits as well as for intraspecific competitive strength. After three months of selection, we found a microevolutionary response to temperature in performance, but only in one of two culling regimes, highlighting the importance of population dynamics in driving microevolutionary change within populations. Furthermore, there was an evolutionary increase in thermal plasticity in performance. The results of the competition experiment were in agreement with predictions based on performance as quantified in the life table experiment and illustrate that microevolution within a short time frame has the ability to influence the outcome of intraspecific competition.
机译:与全球变暖有关的温度升高对许多水生生物的命运提出了挑战。尽管对温度介导的选择的快速进化反应可能允许种群在全球变暖下持续存在,因此是进化生物学的一个关键方面,但其发生的确凿证据很少。在这项研究中,我们通过在实验室条件下进行热选择实验,然后量化生命中两个温度对水的微进化响应的量化,来测试水蚤Daphnia magna(淡水系统中的关键物种)温度升高的遗传适应性。历史特征以及种内竞争实力。经过三个月的选择,我们发现了性能对温度的微进化响应,但仅在两个淘汰制度之一中发生,这突出了种群动态对推动种群内微进化变化的重要性。此外,性能上的热可塑性不断发展。竞争实验的结果与寿命表实验中基于性能的预测相吻合,表明在短时间内的微进化具有影响种内竞争结果的能力。

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